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Articles 8911 - 8940 of 33648
Full-Text Articles in Entire DC Network
Synthesis And Immobilization Of Silver Nanoparticles On Aluminosilicate Nanotubes And Their Antibacterial Properties, G. Ipek Yucelen, Rachel E. Connell, Jessica R. Terbush, David J. Westenberg, Fatih Dogan
Synthesis And Immobilization Of Silver Nanoparticles On Aluminosilicate Nanotubes And Their Antibacterial Properties, G. Ipek Yucelen, Rachel E. Connell, Jessica R. Terbush, David J. Westenberg, Fatih Dogan
Biological Sciences Faculty Research & Creative Works
A novel colloidal method is presented to synthesize silver nanoparticles on aluminosilicate nanotubes. The technique involves decomposition of AgNO3 solution to Ag nanoparticles in the presence of aluminosilicate nanotubes at room temperature without utilizing of reducing agents or any organic additives. Aluminosilicate nanotubes are shown to be capable of providing a unique chemical environment, not only for in situ conversion of Ag+ into Ag0, but also for stabilization and immobilization of Ag nanoparticles. The synthesis strategy described here could be implemented to obtain self-assembled nanoparticles on other single-walled metal oxide nanotubes for unique applications. Finally, we …
Scholars' Mine Quick Facts April 2016, James Roger Weaver
Scholars' Mine Quick Facts April 2016, James Roger Weaver
Scholars’ Mine Statistics
Scholars' Mine statistical quick facts for April 2016.
Full-Text Downloads For 2015-01-01 Through 2015-12-31 For Scholars' Mine, James Roger Weaver
Full-Text Downloads For 2015-01-01 Through 2015-12-31 For Scholars' Mine, James Roger Weaver
Scholars’ Mine Statistics
This report shows how often visitors have downloaded an item published to the repository. Most "hits" will come directly from full-text downloads, however some readers interact with the repository by browsing and searching the site, typing a URL from a citation, or clicking links in search results. These actions are reflected in the number of metadata page hits an item receives.
Evolution Of Stellar-To-Halo Mass Ratio At Z = 0-7 Identified By Clustering Analysis With The Hubble Legacy Imaging And Early Subaru/Hyper Suprime-Cam Survey Data, Yuichi Harikane, Masami Ouchi, Yoshiaki Ono, Surhud More, Shun Saito, For Full List Of Authors, See Publisher's Website.
Evolution Of Stellar-To-Halo Mass Ratio At Z = 0-7 Identified By Clustering Analysis With The Hubble Legacy Imaging And Early Subaru/Hyper Suprime-Cam Survey Data, Yuichi Harikane, Masami Ouchi, Yoshiaki Ono, Surhud More, Shun Saito, For Full List Of Authors, See Publisher's Website.
Physics Faculty Research & Creative Works
We present clustering analysis results from 10,381 Lyman break galaxies (LBGs) at z ∼ 4-7, identified in the Hubble legacy deep imaging and new complimentary large-area Subaru/Hyper Suprime-Cam data. We measure the angular correlation functions of these LBGs at z ∼ 4, 5, 6, and 7 and fit these measurements using halo occupation distribution (HOD) models that provide an estimate of halo masses, Mh ~ (1 - 20 ) x 1011 M⊙. Our Mh estimates agree with those obtained by previous clustering studies in a UV-magnitude versus Mh plane and allow us to calculate …
Expansion Of The Tetragonal Magnetic Phase With Pressure In The Iron Arsenide Superconductor Ba₁₋ₓkₓfe₂As₂, E. Hassinger, G. Gredat, F. Valade, S. René De Cotret, O. Cyr-Choinière, A. Juneau-Fecteau, J. Ph Reid, Hyunsoo Kim, M. A. Tanatar, For Full List Of Authors, See Publisher's Website.
Expansion Of The Tetragonal Magnetic Phase With Pressure In The Iron Arsenide Superconductor Ba₁₋ₓkₓfe₂As₂, E. Hassinger, G. Gredat, F. Valade, S. René De Cotret, O. Cyr-Choinière, A. Juneau-Fecteau, J. Ph Reid, Hyunsoo Kim, M. A. Tanatar, For Full List Of Authors, See Publisher's Website.
Physics Faculty Research & Creative Works
In the temperature-concentration phase diagram of most iron-based superconductors, antiferromagnetic order is gradually suppressed to zero at a critical point, and a dome of superconductivity forms around that point. The nature of the magnetic phase and its fluctuations is of fundamental importance for elucidating the pairing mechanism. In Ba1-xKxFe2As2 and Ba1-xNaxFe2As2, it has recently become clear that the usual stripelike magnetic phase, of orthorhombic symmetry, gives way to a second magnetic phase, of tetragonal symmetry, near the critical point, in the range from x = …
Effect Of The Use Of Natural Gas-Diesel Fuel Mixture On Performance, Emissions And Combustion Characteristics Of A Compression-Ignition Engine, Y. Karagoz, T. Sandalci, Ümit Özgür Köylü, A. S. Dalkilic, S. Wongwises
Effect Of The Use Of Natural Gas-Diesel Fuel Mixture On Performance, Emissions And Combustion Characteristics Of A Compression-Ignition Engine, Y. Karagoz, T. Sandalci, Ümit Özgür Köylü, A. S. Dalkilic, S. Wongwises
Mechanical and Aerospace Engineering Faculty Research & Creative Works
No abstract provided.
Optical Nonlocality Induced Zitterbewegung Near The Dirac Point In Metal-Dielectric Multilayer Metamaterials, L. Sun, Jie Gao, Xiaodong Yang
Optical Nonlocality Induced Zitterbewegung Near The Dirac Point In Metal-Dielectric Multilayer Metamaterials, L. Sun, Jie Gao, Xiaodong Yang
Mechanical and Aerospace Engineering Faculty Research & Creative Works
No abstract provided.
A Dgtd Scheme For Modeling The Radiated Emission From Duts In Shielding Enclosures Using Near Electric Field Only, Ping Li, Yifei Shi, Li (Lijun) Jun Jiang, Hakan Baǧci
A Dgtd Scheme For Modeling The Radiated Emission From Duts In Shielding Enclosures Using Near Electric Field Only, Ping Li, Yifei Shi, Li (Lijun) Jun Jiang, Hakan Baǧci
Electrical and Computer Engineering Faculty Research & Creative Works
To meet the electromagnetic interference regulation, the radiated emission from device under test such as electronic devices must be carefully manipulated and accurately characterized. Instead of resorting to the direct far-field measurement, in this paper, a novel approach is proposed to model the radiated emission from electronic devices placed in shielding enclosures by using the near electric field only. Based on the Schelkkunoff's equivalence principle and Raleigh-Carson reciprocity theorem, only the tangential components of the electric field over the ventilation slots and apertures of the shielding enclosure are sufficient to obtain the radiated emissions outside the shielding box if the …
An Equivalent Circuit Model For Graphene-Based Terahertz Antenna Using The Peec Method, Ying S. Cao, Li (Lijun) Jun Jiang, Albert E. Ruehli
An Equivalent Circuit Model For Graphene-Based Terahertz Antenna Using The Peec Method, Ying S. Cao, Li (Lijun) Jun Jiang, Albert E. Ruehli
Electrical and Computer Engineering Faculty Research & Creative Works
The electromagnetic (EM) characterization of graphene under general EM environments is becoming of interest in the engineering and scientific research fields. However, its numerical modeling process is extremely cost prohibitive due to the huge contrast between its thickness and other dimensions. In this work, for the first time, the EM features of graphene are characterized by a circuit model through the partial element equivalent circuit (PEEC) method. The atomically thick graphene is equivalently replaced by an impedance boundary condition. After incorporating the PEEC method, a novel surface conductivity circuit model is derived for graphene. A physical resistor and inductor are …
Proportionate Adaptive Filtering For Block-Sparse System Identification, Jianming Liu, Steven L. Grant
Proportionate Adaptive Filtering For Block-Sparse System Identification, Jianming Liu, Steven L. Grant
Electrical and Computer Engineering Faculty Research & Creative Works
In this paper, a new family of proportionate normalized least mean square (PNLMS) adaptive algorithms that improve the performance of identifying block-sparse systems is proposed. The main proposed algorithm, called block-sparse PNLMS (BS-PNLMS), is based on the optimization of a mixed norm of the adaptive filter's coefficients. It is demonstrated that both the NLMS and the traditional PNLMS are special cases of BS-PNLMS. Meanwhile, a block-sparse improved PNLMS (BS-IPNLMS) is also derived for both sparse and dispersive impulse responses. Simulation results demonstrate that the proposed BS-PNLMS and BS-IPNLMS algorithms outperformed the NLMS, PNLMS and IPNLMS algorithms with only a modest …
Synthesis Of Large-Scale 2-D Mos2 Atomic Layers By Hydrogen-Free And Promoter-Free Chemical Vapor Deposition, Hung Nguyen, Chih Fang Huang, Weijun Luo, Guangrui Xia, Zhiqiang Chen, Zhiqiang Li, Christopher Raymond, David Doyle, Feng Zhao
Synthesis Of Large-Scale 2-D Mos2 Atomic Layers By Hydrogen-Free And Promoter-Free Chemical Vapor Deposition, Hung Nguyen, Chih Fang Huang, Weijun Luo, Guangrui Xia, Zhiqiang Chen, Zhiqiang Li, Christopher Raymond, David Doyle, Feng Zhao
Electrical and Computer Engineering Faculty Research & Creative Works
As one of the two-dimensional (2-D) transition metal dichalcogenides, atomically thin molybdenum disulfide (MoS2) has attracted significant attention and research interests for micro and nano electronic applications. Significant efforts have been made to develop different approaches in order to obtain atomic layer MoS2, such as exfoliation, chemical synthesis, and physical or chemical vapor deposition (CVD) processes. In this paper, we report a hydrogen-free and promoter-free CVD growth to synthesize large-area MoS2 atomic layers. A variety of techniques including optical microscopy (OM), atomic force microscopy (AFM), photoluminescence (PL) mapping, Raman and x-ray photoelectron spectroscopy (XPS), high resolution electron microscopy (HREM) and …
Strain-Controlled Cyclic Simple Shear Tests On Sand With Radial Strain Measurements, Xin Kang, Louis Ge, Kuang Tsung Chang, Annie On Lei Kwok
Strain-Controlled Cyclic Simple Shear Tests On Sand With Radial Strain Measurements, Xin Kang, Louis Ge, Kuang Tsung Chang, Annie On Lei Kwok
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Strain-controlled cyclic simple-shear tests were performed on silica sand with radial strain measurements. The specimens were tested under a constant K0 condition and subjected to cyclic loading and post cyclic monotonic loading. Threshold cyclic shear strain, volumetric strain, secant shear modulus, and damping ratio are investigated. Generally, the volumetric strain behavior in this study agreed well with literature findings that were investigated using the conventional cyclic direct simple shear test (without radial constraints). Radial strain during monotonic simple shear (post cyclic loading) was found to be a good parameter in monitoring the onset of flow slide in cohesionless soil. The …
Comparison Of Binary And Multi-Level Logic Electronics For Embedded Systems, Shirly M. Damti, Steve Eugene Watkins, R. Joe Stanley
Comparison Of Binary And Multi-Level Logic Electronics For Embedded Systems, Shirly M. Damti, Steve Eugene Watkins, R. Joe Stanley
Electrical and Computer Engineering Faculty Research & Creative Works
Embedded systems are dependent on low-power, miniaturized instrumentation. Comparator circuits are common elements in applications for digital threshold detection. A multi-level, memory-based logic approach is in development that offers potential benefits in power usage and size with respect to traditional binary logic systems. Basic 4-bit operations with CMOS gates and comparators are chosen to compare circuit implementations of binary structures and quaternary equivalents. Circuit layouts and functional operation are presented. In particular, power characteristics and transistor count are examined. The potential for improved embedded systems based on the multilevel, memory-based logic is discussed.
A Fast Time-Domain Em-Tcad Coupled Simulation Framework Via Matrix Exponential With Stiffness Reduction, Quan Chen, Wim Schoenmaker, Shih Hung Weng, Chung Kuan Cheng, Guan Hua Chen, Li (Lijun) Jun Jiang, Ngai Wong
A Fast Time-Domain Em-Tcad Coupled Simulation Framework Via Matrix Exponential With Stiffness Reduction, Quan Chen, Wim Schoenmaker, Shih Hung Weng, Chung Kuan Cheng, Guan Hua Chen, Li (Lijun) Jun Jiang, Ngai Wong
Electrical and Computer Engineering Faculty Research & Creative Works
We present a fast time-domain multiphysics simulation framework that combines full-wave electromagnetism (EM) and carrier transport in semiconductor devices (technology computer-aided design (TCAD)) for radio frequency (RF) and mixed-signal modules. The proposed framework features a division of linear and nonlinear components in the EM-TCAD coupled system. The linear portion is extracted and handled independently with high efficiency by a matrix exponential approach assisted with Krylov subspace method. The nonlinear component is treated by ordinary Newton's method yet with a much sparser Jacobian matrix that leads to substantial speedup in solving the linear system of equations. More convenient error management and …
An Information Exchange Framework Utilizing Smart Buildings For Efficient Microgrid Operation, Jhi Young Joo, Marija D. Ilić
An Information Exchange Framework Utilizing Smart Buildings For Efficient Microgrid Operation, Jhi Young Joo, Marija D. Ilić
Electrical and Computer Engineering Faculty Research & Creative Works
In this paper, we propose an information exchange framework to incorporate smart building demands into a microgrid operation. We especially focus on scheduling smart building demand along with other possibly highly uncertain microgrid generation resources a day ahead or shorter ahead of operation. Since every building demand has different energy consumption profiles and dynamics, it is inefficient for the grid operator to directly control a potentially large number of buildings. On the other hand, if the grid operator does not have sufficient information on the buildings and their resource potentials, smart buildings cannot be deployed to the full extent. Our …
Environmental Engineering Laboratory Development To Promote Active And Hands-On Learning, Sanjay Tewari
Environmental Engineering Laboratory Development To Promote Active And Hands-On Learning, Sanjay Tewari
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
This extended abstract details one instructor’s experience in incorporating hands-on laboratory portion in a junior level civil engineering class, Environmental Engineering. The objective of the change was to help students become more involved and aware of their own learning through active participation so that they can relate to course contents in a better way. The author sought to achieve this through a laboratory structure that 1) required students to reflect on certain topics and device a do-it-yourself experiment to measure certain parameters and 2) provided a level of autonomy by allowing them to choose to work alone or in small …
Traffic Study Using A Video Camera And An Image Processing Software Lessons Learned, Sanjay Tewari, Nazimuddin Wasiuddin, Marissa K. Orr
Traffic Study Using A Video Camera And An Image Processing Software Lessons Learned, Sanjay Tewari, Nazimuddin Wasiuddin, Marissa K. Orr
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Highway Engineering I – CVEN332, is a junior-level course in civil engineering that covers primarily traffic engineering and transportation planning. Traffic engineering topics include isolated intersection signal timing design, intersection capacity analysis and freeway capacity analysis. In fall 2015, students collected real life and local field data in two design modules and used a traffic camera compatible with the video processing software in one design module. The objective of this study is to assess if the usage of local, real life field data and introduction of a traffic camera have any impact on increasing learning, increasing feeling of preparedness and …
A 1-D Coordination Polymer Route To Catalytically Active Co@C Nanoparticles, Anand Pariyar, Siddharth Gopalakrishnan, Joseph Stansbery, Rajankumar L. Patel, Xinhua Liang, Nikolay Nikolaevich Gerasimchuk, Amitava Choudhury
A 1-D Coordination Polymer Route To Catalytically Active Co@C Nanoparticles, Anand Pariyar, Siddharth Gopalakrishnan, Joseph Stansbery, Rajankumar L. Patel, Xinhua Liang, Nikolay Nikolaevich Gerasimchuk, Amitava Choudhury
Chemistry Faculty Research & Creative Works
Pyrolysis of a 1-D polymeric cobalt(ii) coordination complex ([Co(BDC)(Mim)2]n, H2BDC = benzenedicarboxylic acid; Mim = N-methylimidazole) results in the formation of carbon embedded fcc cobalt nanoparticle composites, Co@C. The as-prepared Co@C shows an agglomerated secondary structure with a highly embedded carbon shell comprising of cobalt nanoparticles of 20-100 nm. These Co@C particles show excellent catalytic activity in the reduction of nitrophenol to aminophenol, studied as a model reaction, and evolves as a promising candidate for the gas phase reduction process.
The Role Of Poly(Acrylic Acid) In Conventional Glass Polyalkenoate Cements, Adel M.F. Alhalawani, Declan J. Curran, Daniel Boyd, Mark R. Towler
The Role Of Poly(Acrylic Acid) In Conventional Glass Polyalkenoate Cements, Adel M.F. Alhalawani, Declan J. Curran, Daniel Boyd, Mark R. Towler
Chemical and Biochemical Engineering Faculty Research & Creative Works
Glass polyalkenoate cements (GPCs) have been used in dentistry for over 40 years. These novel bioactive materials are the result of a reaction between a finely ground glass (base) and a polymer (acid), usually poly (acrylic acid) (PAA), in the presence of water. This article reviews the types of PAA used as reagents (including how they vary by molar mass, molecular weight, concentration, polydispersity and content) and the way that they control the properties of the conventional GPCs (CGPCs) formulated from them. The article also considers the effect of PAA on the clinical performance of CGPCs, including biocompatibility, rheological and …
Model For Coupled Large Strain Consolidation And Solute Transport In Layered Soils, Hefu Pu, Patrick J. Fox
Model For Coupled Large Strain Consolidation And Solute Transport In Layered Soils, Hefu Pu, Patrick J. Fox
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
A numerical model, called CST3 (Consolidation and Solute Transport 3), is presented for coupled one-dimensional large strain consolidation and solute transport in layered soils. The consolidation algorithm accounts for vertical strain, soil self-weight, general constitutive relationships, relative velocity of fluid and solid phases, changing compressibility and hydraulic conductivity during consolidation, unload/reload, time-dependent loading and boundary conditions, external hydraulic gradient, variable preconsolidation stress profiles, and multiple soil layers with different material properties. The solute transport algorithm accounts for advection, diffusion, mechanical dispersion, linear and nonlinear sorption, equilibrium and nonequilibrium sorption, porosity-dependent effective diffusion coefficient, and first-order decay reactions. CST3 is based …
Post-Repair Seismic Assessment Of Rc Bridges Damaged With Fractured Column Bars - A Numerical Approach, Ruili He, Yang Yang, Lesley H. Sneed
Post-Repair Seismic Assessment Of Rc Bridges Damaged With Fractured Column Bars - A Numerical Approach, Ruili He, Yang Yang, Lesley H. Sneed
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Seismic repair of reinforced concrete (RC) bridge columns has been studied extensively during the past several decades; however, few studies have been conducted on the influence of the column repair (member level) on the post-repair performance of bridge structures (system level). In a previous experimental study by the authors, a method was developed to rapidly repair severely damaged RC bridge columns to enable the quick reopening of the bridge to emergency traffic. Thus, a lower limit state was used for the repair design, so that the lateral strength and drift capacity of a repaired RC column with fractured longitudinal bars …
The Ideal And Real Gas Heat Capacity Of Potassium Atoms At High Temperatures, Louis Biolsi, Michael Biolsi
The Ideal And Real Gas Heat Capacity Of Potassium Atoms At High Temperatures, Louis Biolsi, Michael Biolsi
Chemistry Faculty Research & Creative Works
The Ideal Gas Heat Capacity, Cp, of Potassium Atoms is Calculated to High Temperatures using Statistical Mechanics. Since There Are a Large Number of Electronic Energy Levels in the Partition Function (Boltzmann Sum) Below the First Ionization Potential, the Partition Function and Cp will become very large as the Temperature Increases Unless the Number of Energy Levels Contributing to the Partition Function is Constrained. Two Primary Categories of Arguments Are Used to Do This. First, at High Temperatures, the Increased Size of the Atoms Constrains the Sum (Bethe Method). Second, an Argument based on the Existence of Interacting …
The Anisotropy Of Hexagonal Close-Packed And Liquid Interface Free Energy Using Molecular Dynamics Simulations Based On Modified Embedded-Atom Method, Ebrahim Asadi, Mohsen Asle Zaeem
The Anisotropy Of Hexagonal Close-Packed And Liquid Interface Free Energy Using Molecular Dynamics Simulations Based On Modified Embedded-Atom Method, Ebrahim Asadi, Mohsen Asle Zaeem
Materials Science and Engineering Faculty Research & Creative Works
This work aims to comprehensively study the anisotropy of the hexagonal close-packed (HCP)-liquid interface free energy using molecular dynamics (MD) simulations based on the modified-embedded atom method (MEAM). As a case study, all the simulations are performed for Magnesium (Mg). The solid-liquid coexisting approach is used to accurately calculate the melting point and melting properties. Then, the capillary fluctuation method (CFM) is used to determine the HCP-liquid interface free energy (γ) and anisotropy parameters. In CFM, a continuous order parameter is employed to accurately locate the HCP-liquid interface location, and the HCP symmetry-adapted spherical harmonics are used to expand γ …
A Frequency-Independent Method For Computing The Physical Optics-Based Electromagnetic Fields Scattered From A Hyperbolic Surface, Yu Mao Wu, Weng Cho Chew, Ya Qiu Jin, Li (Lijun) Jun Jiang, Hongxia Ye, Wei E.I. Sha
A Frequency-Independent Method For Computing The Physical Optics-Based Electromagnetic Fields Scattered From A Hyperbolic Surface, Yu Mao Wu, Weng Cho Chew, Ya Qiu Jin, Li (Lijun) Jun Jiang, Hongxia Ye, Wei E.I. Sha
Electrical and Computer Engineering Faculty Research & Creative Works
In this communication, we propose a frequency-independent approach, the numerical steepest descent path (NSDP) method, for computing the physical optics scattered electromagnetic field on the quadratic hyperbolic surface. Due to the highly oscillatory nature of the physical optics integral, the proposed method relies on deforming the integration path of the integral into the NSDP on the complex plane. Numerical results for the PO-based EM fields from the hyperbolic surface illustrate that the proposed NSDP method is frequency independent in computational cost and error controllable in accuracy.
Ceramic-Ceramic Welds, Greg Hilmas, William Fahrenholtz, Jeremy Lee Watts, Derek Scott King, Sean Landwehr
Ceramic-Ceramic Welds, Greg Hilmas, William Fahrenholtz, Jeremy Lee Watts, Derek Scott King, Sean Landwehr
Materials Science and Engineering Faculty Research & Creative Works
A method of producing a ceramic weld, including identifying a ceramic first surface an a ceramic second surface to he bonded together, maintaining a non-oxidizing atmosphere over the first and second surfaces, and engaging the first and second surfaces to define a joint, An arc is generated between an electrode and the joint to create a liquid phase, and the liquid phase is cooled to yield a solid fusion layer, wherein the first and second surfaces are joined in the fusion layer.
Method To Fabricate Portable Electron Source Based On Nitrogen Incorporated Ultrananocrystalline Diamond (N-Uncd), Anirudha V. Sumant, Ralu Divan, Chrystian M. Posado, Carlos Henry Castano Giraldo, Edwin J. Grant, Hyoung-Koo Lee
Method To Fabricate Portable Electron Source Based On Nitrogen Incorporated Ultrananocrystalline Diamond (N-Uncd), Anirudha V. Sumant, Ralu Divan, Chrystian M. Posado, Carlos Henry Castano Giraldo, Edwin J. Grant, Hyoung-Koo Lee
Nuclear Engineering and Radiation Science Faculty Research & Creative Works
A source cold cathode field emission array (FEA) source based on ultra-nanocrystalline diamond (UNCD) field emitters. This system was constructed as an alternative for detection of obscured objects and material. Depending on the geometry of the given situation a flat-panel source can be used in tomography, radiography, or tomosynthesis. Furthermore, the unit can be used as a portable electron or X-ray scanner or an integral part of an existing detection system. UNCD field emitters show great field emission output and can be deposited over large areas as the case with carbon nanotube “forest” (CNT) cathodes. Furthermore, UNCDs have better mechanical …
Early Acidification Of Mars And The Potential Implications For Biology, Sarah Stewart Johnson, D. Goerlitz, Kathleen C. Benison, Melanie R. Mormile, D. W. Ming
Early Acidification Of Mars And The Potential Implications For Biology, Sarah Stewart Johnson, D. Goerlitz, Kathleen C. Benison, Melanie R. Mormile, D. W. Ming
Biological Sciences Faculty Research & Creative Works
A leading paleoclimate theory for Mars, based on the identification of phyllosilicate minerals in ancient terrains, posits that the first several million years of the planet’s history were dominated by neutral to alkaline pH. However, evidence is mounting for the consideration of an alternate hypothesis: that some smectites on Mars formed under acidic conditions, and that the early surface of Mars may not have been subject to circum-neutral pH conditions, at least not uniformly. Work on shergottitic liquids suggests that up to 2400 ppm of sulfur could have degassed from martian magma, supplying more than enough sulfur for the planet’s …
Differential Studies And Projectile Charge Effects In Ionization Of Molecular Nitrogen By Positron And Electron Impact, O. G. De Lucio, Robert D. Dubois
Differential Studies And Projectile Charge Effects In Ionization Of Molecular Nitrogen By Positron And Electron Impact, O. G. De Lucio, Robert D. Dubois
Physics Faculty Research & Creative Works
Singly, doubly, and triply differential information, obtained from coincidence measurements, are presented for 250-eV positron- and electron-impact ionization of molecular nitrogen. Comparisons of these data as functions of energy loss, scattering, and emission angles illustrate differences associated with the sign of the projectile charge. Via a deconvolution and normalization procedure, the triply differential data are converted to absolute cross sections. By fitting the triply differential cross sections for single ionization with simple functions, the intensities, directions, and peak to background intensities of the binary peaks plus the ratio of recoil to binary interactions are compared for positron and electron impact. …
Faculty Senate Minutes Mar. 24, 2016, Missouri University Of Science And Technology Faculty Senate
Faculty Senate Minutes Mar. 24, 2016, Missouri University Of Science And Technology Faculty Senate
Minutes & Agendas
No abstract provided.